z-logo
Premium
Local sorting, bend curvature, and particle mobility in meandering gravel bed rivers
Author(s) -
Clayton Jordan A.
Publication year - 2010
Publication title -
water resources research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.863
H-Index - 217
eISSN - 1944-7973
pISSN - 0043-1397
DOI - 10.1029/2008wr007669
Subject(s) - sorting , bed load , geology , curvature , sediment , hydrology (agriculture) , grain size , geomorphology , pebble , fluvial , radius , sediment transport , geotechnical engineering , geometry , soil science , mathematics , computer security , algorithm , structural basin , computer science
Hydraulic, grain scale sorting of mixed bed sediment influences the mobility of grains in discrete areas of river channels. To assess this effect, local values of surface grain size sorting were compared with measurements of bed load at corresponding locations in a bend of the Colorado River in Rocky Mountain National Park (RMNP), and the distribution of local Shields stress through the reach was derived from a two‐dimensional flow model. With decreasing degrees of local sorting, the relative mobility of the fine‐ and coarse‐size fractions of the load appeared to decrease and increase, respectively. Furthermore, back‐calculated critical Shields stress values for sediment entrainment decreased with values of local sorting, particularly for the upstream portion of the reach where particles were more poorly sorted and coarse grains had higher relative exposure. To evaluate the pervasiveness of these and other patterns of sorting in gravel rivers, detailed field measurements of channel topography and surface grain size (317 pebble counts) were obtained for seven additional reaches of differing curvature (radius of curvature/width from 1 to 28) near the headwaters of the Colorado and Fall rivers in RMNP. Moderately curved and tight bends (radius of curvature/width ≤ 7) were significantly better sorted than comparatively straight reaches. Values of local sorting decreased with distance downstream for the majority of curved channels, reflecting a reduction in the standard deviation of surface grain sizes toward the lower end of the reach; this effect increased slightly with bend sharpness.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here